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Senecavirus A 3C Protease Mediates Host Cell Apoptosis Late in Infection

Senecavirus A (SVA), an oncolytic picornavirus used for cancer treatment in humans, has recently emerged as a vesicular disease (VD)-causing agent in swine worldwide. Notably, SVA-induced VD is indistinguishable from foot-and-mouth disease (FMD) and other high-consequence VDs of pigs. Here we invest...

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Autores principales: Fernandes, Maureen H. V., Maggioli, Mayara F., Otta, Jaelin, Joshi, Lok R., Lawson, Steve, Diel, Diego G.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6424860/
https://www.ncbi.nlm.nih.gov/pubmed/30918505
http://dx.doi.org/10.3389/fimmu.2019.00363
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author Fernandes, Maureen H. V.
Maggioli, Mayara F.
Otta, Jaelin
Joshi, Lok R.
Lawson, Steve
Diel, Diego G.
author_facet Fernandes, Maureen H. V.
Maggioli, Mayara F.
Otta, Jaelin
Joshi, Lok R.
Lawson, Steve
Diel, Diego G.
author_sort Fernandes, Maureen H. V.
collection PubMed
description Senecavirus A (SVA), an oncolytic picornavirus used for cancer treatment in humans, has recently emerged as a vesicular disease (VD)-causing agent in swine worldwide. Notably, SVA-induced VD is indistinguishable from foot-and-mouth disease (FMD) and other high-consequence VDs of pigs. Here we investigated the role of apoptosis on infection and replication of SVA. Given the critical role of the nuclear factor-kappa B (NF-κB) signaling pathway on modulation of cell death, we first assessed activation of NF-κB during SVA infection. Results here show that while early during infection SVA induces activation of NF-κB, as evidenced by nuclear translocation of NF-κB-p65 and NF-κB-mediated transcription, late in infection a cleaved product corresponding to the C-terminus of NF-κB-p65 is detected in infected cells, resulting in lower NF-κB transcriptional activity. Additionally, we assessed the potential role of SVA 3C protease (3C(pro)) in SVA-induced host-cell apoptosis and cleavage of NF-κB-p65. Transient expression of SVA 3C(pro) was associated with cleavage of NF-κB-p65 and Poly (ADP-ribose) polymerase (PARP), suggesting its involvement in virus-induced apoptosis. Most importantly, we showed that while cleavage of NF-κB-p65 is secondary to caspase activation, the proteolytic activity of SVA 3C(pro) is essential for induction of apoptosis. Experiments using the pan-caspase inhibitor Z-VAD-FMK confirmed the relevance of late apoptosis for SVA infection, indicating that SVA induces apoptosis, presumably, as a mechanism to facilitate virus release and/or spread from infected cells. Together, these results suggest an important role of apoptosis for SVA infection biology.
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spelling pubmed-64248602019-03-27 Senecavirus A 3C Protease Mediates Host Cell Apoptosis Late in Infection Fernandes, Maureen H. V. Maggioli, Mayara F. Otta, Jaelin Joshi, Lok R. Lawson, Steve Diel, Diego G. Front Immunol Immunology Senecavirus A (SVA), an oncolytic picornavirus used for cancer treatment in humans, has recently emerged as a vesicular disease (VD)-causing agent in swine worldwide. Notably, SVA-induced VD is indistinguishable from foot-and-mouth disease (FMD) and other high-consequence VDs of pigs. Here we investigated the role of apoptosis on infection and replication of SVA. Given the critical role of the nuclear factor-kappa B (NF-κB) signaling pathway on modulation of cell death, we first assessed activation of NF-κB during SVA infection. Results here show that while early during infection SVA induces activation of NF-κB, as evidenced by nuclear translocation of NF-κB-p65 and NF-κB-mediated transcription, late in infection a cleaved product corresponding to the C-terminus of NF-κB-p65 is detected in infected cells, resulting in lower NF-κB transcriptional activity. Additionally, we assessed the potential role of SVA 3C protease (3C(pro)) in SVA-induced host-cell apoptosis and cleavage of NF-κB-p65. Transient expression of SVA 3C(pro) was associated with cleavage of NF-κB-p65 and Poly (ADP-ribose) polymerase (PARP), suggesting its involvement in virus-induced apoptosis. Most importantly, we showed that while cleavage of NF-κB-p65 is secondary to caspase activation, the proteolytic activity of SVA 3C(pro) is essential for induction of apoptosis. Experiments using the pan-caspase inhibitor Z-VAD-FMK confirmed the relevance of late apoptosis for SVA infection, indicating that SVA induces apoptosis, presumably, as a mechanism to facilitate virus release and/or spread from infected cells. Together, these results suggest an important role of apoptosis for SVA infection biology. Frontiers Media S.A. 2019-03-13 /pmc/articles/PMC6424860/ /pubmed/30918505 http://dx.doi.org/10.3389/fimmu.2019.00363 Text en Copyright © 2019 Fernandes, Maggioli, Otta, Joshi, Lawson and Diel. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Immunology
Fernandes, Maureen H. V.
Maggioli, Mayara F.
Otta, Jaelin
Joshi, Lok R.
Lawson, Steve
Diel, Diego G.
Senecavirus A 3C Protease Mediates Host Cell Apoptosis Late in Infection
title Senecavirus A 3C Protease Mediates Host Cell Apoptosis Late in Infection
title_full Senecavirus A 3C Protease Mediates Host Cell Apoptosis Late in Infection
title_fullStr Senecavirus A 3C Protease Mediates Host Cell Apoptosis Late in Infection
title_full_unstemmed Senecavirus A 3C Protease Mediates Host Cell Apoptosis Late in Infection
title_short Senecavirus A 3C Protease Mediates Host Cell Apoptosis Late in Infection
title_sort senecavirus a 3c protease mediates host cell apoptosis late in infection
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6424860/
https://www.ncbi.nlm.nih.gov/pubmed/30918505
http://dx.doi.org/10.3389/fimmu.2019.00363
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